Electrochemical growth mechanism of nanoporous platinum layers

dc.bibliographicCitation.firstPage98eng
dc.bibliographicCitation.volume4eng
dc.contributor.authorStanca, Sarmiza-Elena
dc.contributor.authorVogt, Oliver
dc.contributor.authorZieger, Gabriel
dc.contributor.authorIhring, Andreas
dc.contributor.authorDellith, Jan
dc.contributor.authorUndisz, Andreas
dc.contributor.authorRettenmayr, Markus
dc.contributor.authorSchmidt, Heidemarie
dc.date.accessioned2022-01-17T11:39:53Z
dc.date.available2022-01-17T11:39:53Z
dc.date.issued2021
dc.description.abstractPorous platinum is a frequently used catalyst material in electrosynthesis and a robust broadband absorber in thermoelectrics. Pore size distribution and localization determine its properties by a large extent. However, the pore formation mechanism during the growth of the material remains unclear. In this work we elucidate the mechanism underlying electrochemical growth of nanoporous platinum layers and its control by ionic concentration and current density during electrolysis. The electrode kinetics and reduction steps of PtCl4 on platinum electrodes are investigated by cyclic voltammetry and impedance measurements. Cyclic voltammograms show three reduction steps: two steps relate to the platinum cation reduction, and one step relates to the hydrogen reduction. Hydrogen is not involved in the reduction of PtCl4, however it enables the formation of nanopores in the layers. These findings contribute to the understanding of electrochemical growth of nanoporous platinum layers in isopropanol with thickness of 100 nm to 500 nm.eng
dc.description.versionpublishedVersioneng
dc.identifier.urihttps://oa.tib.eu/renate/handle/123456789/7825
dc.identifier.urihttps://doi.org/10.34657/6866
dc.language.isoengeng
dc.publisher[London] : Macmillan Publishers Limited, part of Springer Natureeng
dc.relation.doihttps://doi.org/10.1038/s42004-021-00535-w
dc.relation.essn2399-3669
dc.relation.ispartofseriesCommunications chemistry 4 (2021)eng
dc.rights.licenseCC BY 4.0 Unportedeng
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/eng
dc.subjectporous platinumeng
dc.subjectelectrosynthesiseng
dc.subjectbroadband absorbereng
dc.subject.ddc540eng
dc.titleElectrochemical growth mechanism of nanoporous platinum layerseng
dc.typearticleeng
dc.typeTexteng
dcterms.bibliographicCitation.journalTitleCommunications chemistryeng
tib.accessRightsopenAccesseng
wgl.contributorIPHTeng
wgl.subjectChemieeng
wgl.typeZeitschriftenartikeleng
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